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SRS_Standard 2019-03-29 03.29 pair #432290816
details
property
value
status
complete
benchmark
size-12-alpha-3-num-237.xml
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n097.star.cs.uiowa.edu
space
Waldmann_07_size12
run statistics
property
value
solver
matchbox-2019-03-17
configuration
std.sh
runtime (wallclock)
1.80626 seconds
cpu usage
6.90416
user time
5.8277
system time
1.07645
max virtual memory
1.16749704E8
max residence set size
264532.0
stage attributes
key
value
starexec-result
YES
output
4.51/1.21 YES 4.51/1.21 property Termination 4.51/1.21 has value True 4.77/1.22 for SRS ( [a] -> [], [a, b] -> [b, c, a], [c, c, a] -> [a, b, a]) 4.77/1.22 reason 4.77/1.22 remap for 3 rules 4.77/1.22 property Termination 4.77/1.22 has value True 4.77/1.22 for SRS ( [0] -> [], [0, 1] -> [1, 2, 0], [2, 2, 0] -> [0, 1, 0]) 4.77/1.22 reason 4.77/1.22 reverse each lhs and rhs 4.77/1.22 property Termination 4.77/1.22 has value True 4.77/1.22 for SRS ( [0] -> [], [1, 0] -> [0, 2, 1], [0, 2, 2] -> [0, 1, 0]) 4.77/1.22 reason 4.77/1.22 DP transform 4.77/1.22 property Termination 4.77/1.22 has value True 4.77/1.26 for SRS ( [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0], [1#, 0] |-> [0#, 2, 1], [1#, 0] |-> [1#], [0#, 2, 2] |-> [0#, 1, 0], [0#, 2, 2] |-> [1#, 0], [0#, 2, 2] |-> [0#]) 4.77/1.26 reason 4.77/1.26 remap for 8 rules 4.77/1.26 property Termination 4.95/1.27 has value True 4.95/1.32 for SRS ( [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0], [3, 0] |-> [4, 2, 1], [3, 0] |-> [3], [4, 2, 2] |-> [4, 1, 0], [4, 2, 2] |-> [3, 0], [4, 2, 2] |-> [4]) 4.95/1.32 reason 4.95/1.33 EDG has 1 SCCs 4.95/1.33 property Termination 4.95/1.33 has value True 4.95/1.33 for SRS ( [3, 0] |-> [4, 2, 1], [4, 2, 2] |-> [4], [4, 2, 2] |-> [3, 0], [3, 0] |-> [3], [4, 2, 2] |-> [4, 1, 0], [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0]) 4.95/1.33 reason 4.95/1.33 Matrix { monotone = Weak, domain = Arctic, bits = 4, dim = 2, solver = Minisatapi, verbose = False, tracing = True} 4.95/1.33 interpretation 4.95/1.33 0 / 2A 2A \ 4.95/1.33 \ 0A 0A / 4.95/1.33 1 / 0A 0A \ 4.95/1.33 \ -2A -2A / 4.95/1.33 2 / 0A 2A \ 4.95/1.33 \ 0A 2A / 4.95/1.33 3 / 26A 28A \ 4.95/1.33 \ 26A 28A / 4.95/1.33 4 / 24A 26A \ 4.95/1.33 \ 24A 26A / 4.95/1.33 [3, 0] |-> [4, 2, 1] 4.95/1.33 lhs rhs ge gt 4.95/1.33 / 28A 28A \ / 26A 26A \ True True 4.95/1.33 \ 28A 28A / \ 26A 26A / 4.95/1.33 [4, 2, 2] |-> [4] 4.95/1.33 lhs rhs ge gt 4.95/1.33 / 28A 30A \ / 24A 26A \ True True 4.95/1.33 \ 28A 30A / \ 24A 26A / 4.95/1.33 [4, 2, 2] |-> [3, 0] 4.95/1.33 lhs rhs ge gt 4.95/1.33 / 28A 30A \ / 28A 28A \ True False 4.95/1.33 \ 28A 30A / \ 28A 28A / 4.95/1.34 [3, 0] |-> [3] 4.95/1.34 lhs rhs ge gt 4.95/1.34 / 28A 28A \ / 26A 28A \ True False 4.95/1.34 \ 28A 28A / \ 26A 28A / 4.95/1.34 [4, 2, 2] |-> [4, 1, 0] 4.95/1.34 lhs rhs ge gt 4.95/1.34 / 28A 30A \ / 26A 26A \ True True 4.95/1.34 \ 28A 30A / \ 26A 26A / 4.95/1.34 [0] ->= [] 4.95/1.34 lhs rhs ge gt 4.95/1.34 / 2A 2A \ / 0A - \ True False 4.95/1.34 \ 0A 0A / \ - 0A / 4.95/1.34 [1, 0] ->= [0, 2, 1] 4.95/1.34 lhs rhs ge gt 4.95/1.34 / 2A 2A \ / 2A 2A \ True False 4.95/1.34 \ 0A 0A / \ 0A 0A / 4.95/1.34 [0, 2, 2] ->= [0, 1, 0] 4.95/1.34 lhs rhs ge gt 4.95/1.34 / 4A 6A \ / 4A 4A \ True False 4.95/1.34 \ 2A 4A / \ 2A 2A / 4.95/1.34 property Termination 4.95/1.34 has value True 5.27/1.36 for SRS ( [4, 2, 2] |-> [3, 0], [3, 0] |-> [3], [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0]) 5.27/1.36 reason 5.27/1.36 weights 5.27/1.36 Map [(4, 1/1)] 5.27/1.36 5.27/1.36 property Termination 5.27/1.36 has value True 5.27/1.36 for SRS ( [3, 0] |-> [3], [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0]) 5.27/1.36 reason 5.27/1.36 EDG has 1 SCCs 5.27/1.36 property Termination 5.27/1.36 has value True 5.27/1.36 for SRS ( [3, 0] |-> [3], [0] ->= [], [1, 0] ->= [0, 2, 1], [0, 2, 2] ->= [0, 1, 0]) 5.27/1.36 reason 5.27/1.36 Matrix { monotone = Weak, domain = Arctic, bits = 4, dim = 2, solver = Minisatapi, verbose = False, tracing = True} 5.27/1.36 interpretation 5.27/1.36 0 / 2A 2A \ 5.27/1.36 \ 0A 0A / 5.27/1.36 1 / 0A 0A \ 5.27/1.36 \ -2A -2A / 5.27/1.36 2 / 0A 2A \ 5.27/1.36 \ 0A 0A / 5.27/1.36 3 / 7A 7A \ 5.27/1.36 \ 7A 7A /
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